论文标题

基于宽带模型的反演使光声显微镜超出声学衍射极限

Broadband model-based inversion enables optoacoustic microscopy beyond the acoustic diffraction limit

论文作者

Li, Weiye, Hofmann, Urs A. T., Rebling, Johannes, Ozbek, Ali, Gong, Yuxiang, Razansky, Daniel, Dean-Ben, Xose Luis

论文摘要

声学声学显微镜(AR-OAM)从可与光学显微镜无法达到的深度可从生物组织中检索解剖学和功能对比。 AR-OAM的成像性能已通过图像重建算法进行了提高,从而提供高横向分辨率最终受到声学衍射的限制。在这项工作中,我们建议一种新的基于模型的框架有效利用扫描对称性,以重建AR-OAM图像。该模型准确地说明了球形聚偏二氟乙烯传感器的空间脉冲响应和大检测带宽,该传感器促进了在AR-OAM图像重建中通常用图像对比和分辨率的AR-OAM图像重建中通常使用的合成孔径聚焦技术。此外,基于L1-norm正则化的重建实现了解决其他方法无法区分的解决结构,该结构通过数值模拟以及幻影和体内实验证实。所达到的性能证明了AR-OAM作为一种能够突破声学衍射施加的极限的超分辨率成像方法,因此为旋链和临床研究中光学不透明组织的显微镜疑问开辟了前所未有的能力。

Acoustic-resolution optoacoustic microscopy (AR-OAM) retrieves anatomical and functional contrast from living tissues at depths not reachable with optical microscopy. The imaging performance of AR-OAM has been advanced with image reconstruction algorithms providing high lateral resolution ultimately limited by acoustic diffraction. In this work, we suggest a new model-based framework efficiently exploiting scanning symmetries for high-resolution reconstruction of AR-OAM images. The model accurately accounts for the spatial impulse response and large detection bandwidth of a spherical polyvinylidene difluoride sensor, which facilitates significantly outperforming synthetic aperture focusing technique commonly employed in AR-OAM image reconstruction in terms of image contrast and resolution. Furthermore, reconstructions based on L1-norm regularization enabled resolving structures indistinguishable with other methods, which was confirmed by numerical simulations as well as phantom and in vivo experiments. The achieved performance demonstrates the applicability of AR-OAM as a super-resolution imaging method capable of breaking through the limits imposed by acoustic diffraction, thus opening unprecedented capabilities for the microscopic interrogation of optically opaque tissues in preclinical and clinical studies.

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